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肌球蛋白错误折叠与青光眼:20 年的最新进展。

Myocilin misfolding and glaucoma: A 20-year update.

机构信息

School of Chemistry & Biochemistry, Georgia Institute of Technology, 901 Atlantic Dr. NW, Atlanta, GA, 30332-0400, USA.

School of Chemistry & Biochemistry, Georgia Institute of Technology, 901 Atlantic Dr. NW, Atlanta, GA, 30332-0400, USA.

出版信息

Prog Retin Eye Res. 2023 Jul;95:101188. doi: 10.1016/j.preteyeres.2023.101188. Epub 2023 May 20.

Abstract

Mutations in the gene MYOC account for approximately 5% of cases of primary open angle glaucoma (POAG). MYOC encodes for the protein myocilin, a multimeric secreted glycoprotein composed of N-terminal coiled-coil (CC) and leucine zipper (LZ) domains that are connected via a disordered linker to a 30 kDa olfactomedin (OLF) domain. More than 90% of glaucoma-causing mutations are localized to the OLF domain. While myocilin is expressed in numerous tissues, mutant myocilin is only associated with disease in the anterior segment of the eye, in the trabecular meshwork. The prevailing pathogenic mechanism involves a gain of toxic function whereby mutant myocilin aggregates intracellularly instead of being secreted, which causes cell stress and an early timeline for TM cell death, elevated intraocular pressure, and subsequent glaucoma-associated retinal degeneration. In this review, we focus on the work our lab has conducted over the past ∼15 years to enhance our molecular understanding of myocilin-associated glaucoma, which includes details of the molecular structure and the nature of the aggregates formed by mutant myocilin. We conclude by discussing open questions, such as predicting phenotype from genotype alone, the elusive native function of myocilin, and translational directions enabled by our work.

摘要

MYOC 基因突变约占原发性开角型青光眼 (POAG)病例的 5%。MYOC 编码肌球蛋白,一种由 N 端卷曲螺旋 (CC) 和亮氨酸拉链 (LZ) 结构域组成的多聚体分泌糖蛋白,通过无序连接子与 30 kDa 的嗅觉素 (OLF) 结构域相连。超过 90%的致青光眼突变定位于 OLF 结构域。虽然肌球蛋白在许多组织中表达,但突变肌球蛋白仅与眼睛前段的小梁网中的疾病有关。流行的致病机制涉及获得毒性功能,即突变肌球蛋白在细胞内聚集而不是分泌,这导致细胞应激和 TM 细胞死亡的早期时间轴、眼内压升高以及随后的与青光眼相关的视网膜变性。在这篇综述中,我们重点介绍了我们实验室在过去 15 年中进行的工作,以增强我们对肌球蛋白相关青光眼的分子理解,其中包括分子结构的细节和突变肌球蛋白形成的聚集体的性质。最后,我们讨论了一些悬而未决的问题,例如仅凭基因型预测表型、肌球蛋白难以捉摸的天然功能以及我们工作带来的转化方向。

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Myocilin misfolding and glaucoma: A 20-year update.肌球蛋白错误折叠与青光眼:20 年的最新进展。
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